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Improving Power Quality and Distribution Efficiency in Micro-Grids by Cooperative Control of Switching Power Interfaces

机译:通过交换电源接口的协作控制提高微电网的电力质量和分配效率

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Smart grids offer a wide application domain for power electronics. In fact, every distributed energy resource ( DER) includes an electronic power processor (Switching Power Interface, SPI) which controls the currents drawn from the grid and can be driven to optimize the power flow, improve voltage stability and increase distribution efficiency. For these aims, such distributed SPIs must perform cooperatively. This is true also in low-voltage residential micro-grids, where the number of active DERs and the generated power may vary during daytime, thus requiring dynamic adaptation of SPI operation. To achieve this goal different approaches can be adopted, depending on the available communication capability. This paper discusses various control solutions applicable in absence of supervisory control, e.g., in residential micro-grids, where communication is possible between neighbor units only ( surround control) or is not available at all (plug & play control).
机译:智能电网为电力电子设备提供广泛的应用领域。事实上,每个分布式能源资源(DER)包括一种电子电源处理器(开关电源接口,SPI),其控制从网格中汲取的电流,并且可以被驱动以优化电流,提高电压稳定性并提高分布效率。对于这些目标,这种分布式SPI必须合作地执行。这也是如此在低电压住宅微网格中,其中有源DER的数量和产生的功率可能在白天期间变化,因此需要动态适应SPI操作。为了实现这一目标,可以采用不同的方法,具体取决于可用的通信能力。本文讨论了在没有监督控制的情况下适用的各种控制解决方案,例如,在居住的微网格中,其中仅在邻居单元之间进行通信(环绕控制)或根本不可用(即插即用控制)。

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